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May 30, 2024Biological Imaging1 citationsOpen Access

Reconstructing Interpretable Features in Computational Super-Resolution microscopy via Regularized Latent Search

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MGMarzieh GheisariInstitut de Biologie de l'École Normale SupérieureAGAuguste GenovesioInserm

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Abstract

Supervised deep learning approaches can artificially increase the resolution of microscopy images by learning a mapping between two image resolutions or modalities. However, such methods often require a large set of hard-to-get low-res/high-res image pairs and produce synthetic images with a moderate increase in resolution. Conversely, recent methods based on generative adversarial network (GAN) latent search offered a drastic increase in resolution without the need of paired images. However, they offer limited reconstruction of the high-resolution (HR) image interpretable features. Here, we propose a robust super-resolution (SR) method based on regularized latent search (RLS) that offers an actionable balance between fidelity to the ground truth (GT) and realism of the recovered image given a distribution prior. The latter allows to split the analysis of a low-resolution (LR) image into a computational SR task performed by deep learning followed by a quantification task performed by a handcrafted algorithm based on interpretable biological features. This two-step process holds potential for various applications such as diagnostics on mobile devices, where the main aim is not to recover the HR details of a specific sample but rather to obtain HR images that preserve explainable and quantifiable differences between conditions.

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Gheisari et al. (2024) studied this question.

synapsesocial.com/papers/68e67aa1b6db643587604d5bhttps://doi.org/10.1017/s2633903x24000084
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